THERMAL SPRAY ASSEMBLY
    25.
    发明授权

    公开(公告)号:EP3148704B1

    公开(公告)日:2018-12-05

    申请号:EP15728433.2

    申请日:2015-05-22

    申请人: Element Six Gmbh

    发明人: KRENN, Andreas

    IPC分类号: B05B7/22 H05H1/42

    摘要: A thermal spray assembly (10) for transforming precursor material (60) into a layer of deposited material joined to a substrate body. A plasma torch produces a plasma jet from a plasma nozzle (28) and a feeder mechanism (30) guides the precursor material into the plasma jet in use and is capable of providing a feeder orifice when in an open condition. The feeder mechanism (30) is provided with a distribution chamber configured for guiding moving precursor material azimuthally around the plasma torch, a plurality of deflector structures (38) configured for deflecting the precursor material (60) from the distribution chamber and guiding it into a guide chamber configured for guiding the precursor material (60) to the plasma jet in use.

    THERMAL SPRAY ASSEMBLY AND METHOD FOR USING IT
    27.
    发明公开
    THERMAL SPRAY ASSEMBLY AND METHOD FOR USING IT 有权
    VERFAHREN ZUR VERWENDUNG DAVONWÄRMESPRÜHANORDNUNG

    公开(公告)号:EP3148704A1

    公开(公告)日:2017-04-05

    申请号:EP15728433.2

    申请日:2015-05-22

    申请人: Element Six Gmbh

    发明人: KRENN, Andreas

    IPC分类号: B05B7/22 H05H1/42

    摘要: A thermal spray assembly (10) for transforming precursor material (60) into a layer of deposited material joined to a substrate body. A plasma torch produces a plasma jet from a plasma nozzle (28) and a feeder mechanism (30) guides the precursor material into the plasma jet in use and is capable of providing a feeder orifice when in an open condition. The feeder mechanism (30) is provided with a distribution chamber configured for guiding moving precursor material azimuthally around the plasma torch, a plurality of deflector structures (38) configured for deflecting the precursor material (60) from the distribution chamber and guiding it into a guide chamber configured for guiding the precursor material (60) to the plasma jet in use.

    摘要翻译: 一种用于将前体材料(60)转化成连接到基底主体的沉积材料层的热喷涂组件(10)。 等离子体焰炬产生来自等离子体喷嘴(28)的等离子体射流,并且进料机构(30)在使用中将前体材料引导到等离子体射流中,并且当处于打开状态时能够提供进料口。 馈送机构(30)设置有分配室,其被配置为用于围绕等离子体焰炬围绕导向移动的前体材料;多个偏转器结构(38),其构造成用于使前体材料(60)从分配室偏转并将其引导到 导向室,其构造成用于在使用中将前体材料(60)引导到等离子体射流。

    THERMAL SPRAY ASSEMBLY AND METHOD FOR USING IT
    28.
    发明公开
    THERMAL SPRAY ASSEMBLY AND METHOD FOR USING IT 审中-公开
    热喷涂组件和使用它的方法

    公开(公告)号:EP3148703A1

    公开(公告)日:2017-04-05

    申请号:EP15723716.5

    申请日:2015-05-22

    申请人: Element Six Gmbh

    发明人: KRENN, Andreas

    IPC分类号: B05B7/22 H05H1/42

    CPC分类号: B05B7/226 H05H1/42

    摘要: A thermal spray assembly (10) for transforming precursor material (60) into a layer of deposited material joined to a substrate body. A plasma torch (20) produces a plasma jet from a plasma nozzle (28). A feeder mechanism (30) guides the precursor material (60) into the plasma jet in use and provides a feeder orifice (70) when in an open condition. The feeder mechanism comprises a guide chamber (34) and a moveable guide mechanism (32), and the guide chamber is capable of guiding the precursor material to the feeder orifice, through which the precursor material can move from the guide chamber and enter the plasma jet at a variable mean distance from the plasma nozzle (28) in response to movement of the guide mechanism (32).

    摘要翻译: 一种用于将前体材料(60)转变成接合到基体的沉积材料层的热喷涂组件(10)。 等离子炬(20)从等离子喷嘴(28)产生等离子射流。 进料机构(30)在使用中将前体材料(60)引导到等离子体射流中,并且当处于打开状态时提供进料口(70)。 进给机构包括引导腔室(34)和可移动引导机构(32),并且引导腔室能够将前驱材料引导至进给孔口,前体材料可通过引导腔室从引导腔室移动并进入等离子体 响应于所述引导机构(32)的移动而以与所述等离子体喷嘴(28)不同的平均距离喷射所述喷嘴。

    STRIKE CONSTRUCTIONS, PICKS COMPRISING SAME AND METHODS FOR MAKING SAME
    30.
    发明公开
    STRIKE CONSTRUCTIONS, PICKS COMPRISING SAME AND METHODS FOR MAKING SAME 审中-公开
    撞击构造,其制造该传感器和方法

    公开(公告)号:EP3071791A2

    公开(公告)日:2016-09-28

    申请号:EP14803084.4

    申请日:2014-11-19

    申请人: Element Six GmbH

    IPC分类号: E21C35/183

    摘要: A method of making a strike construction for a pick tool, a strike construction for a pick tool and a pick tool. The strike construction comprises a strike tip (2) and a support body (20), in which respective attachment ends (10,22) of each of the strike tip and support body are joined to each other, the attachment end of the strike tip is coterminous with cemented carbide material comprised in the strike tip, and the attachment end of the support body is coterminous with cemented carbide material comprised in an end portion of the support body, the end portion being configured such that sides of the support body depend divergently from its attachment end. The method includes providing the strike tip (2) and a precursor body (28) for the support body, in which a proximate end (25) of the precursor body is coterminous with cemented carbide material comprised in an end portion of the precursor body, the end portion of the precursor body being configured such that sides of the precursor body depend divergently from its proximate end, the area of which is less than the area of the attachment end of the support body (20). The method further including processing the end portion of the precursor body to increase the area of the proximate end to that of the attachment end of the support body; and joining the respective attachment ends of the strike tip and the support body to provide the strike construction.